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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Hofmeister Effects on Cation Exchange Equilibrium: Quantification of Ion Exchange Selectivity
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Hofmeister Effects on Cation Exchange Equilibrium: Quantification of Ion Exchange Selectivity

机译:霍夫迈斯特对阳离子交换平衡的影响:离子交换选择性的定量

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The Hofmeister or specific ion effects are not involved in the existing ion exchange equilibrium theories. In this study, a new cation exchange model considering the specific ion effects was established. The relative adsorption ability was quantified through relative adsorption energy or selectivity coefficients of ions. The quantificational sequence of relative adsorption ratio ((relative adsorption energe for i ion)/(relative adsorption energy for; ion)) calculated from the new model was obtained: Ca >Mg ((Ca~(2+))/(Mg~(2+)) = 1.407) >K ((Mg~(2+))/ IC~(2+) = 1.467) >Na (K~+/(Na~(2+)) = 1.646) >Li ((Na~(2+))/(Li~(2+)) = 1.110). It provided a new theory for quantificational description of ionic exchange adsorption selectivity for any ion pairs. The experimental data on various materials (montmorillonite, Illite, and Altamont soil) with very different charge densities agree well with each other. Thus we presume that the new model may apply to all charged surfaces.
机译:霍夫迈斯特效应或特定的离子效应不包含在现有的离子交换平衡理论中。在这项研究中,建立了考虑特定离子效应的新阳离子交换模型。相对吸附能力通过离子的相对吸附能或选择性系数来定量。由新模型计算得出的相对吸附率的定量顺序(离子的相对吸附能)/(离子的相对吸附能):Ca> Mg((Ca〜(2 +))/(Mg〜 (2+))= 1.407)> K((Mg〜(2 +))/ IC〜(2+)= 1.467)> Na(K〜+ /(Na〜(2+))= 1.646)> Li( (Na〜(2 +))/(Li〜(2+))= 1.110)。它为定量描述任何离子对的离子交换吸附选择性提供了新的理论。电荷密度差异很大的各种材料(蒙脱土,伊利石和阿尔塔蒙特土壤)的实验数据相互吻合。因此,我们假定新模型可以应用于所有带电表面。

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